Comp-neuro
By thread
comp-neuro@lists.cnsorg.org
By month
Messages by month
- ----- 2026 -----
- September
- August
- July
- June
- May
- April
- March
- February
- January
- ----- 2025 -----
- December
- November
- October
- September
- August
- July
- June
- May
- April
- March
- February
- January
- ----- 2024 -----
- December
- November
- October
- September
- August
- July
- June
- May
- April
- March
- February
- January
- ----- 2023 -----
- December
- November
- October
- September
- August
- July
- June
- May
- April
- March
- February
- January
- ----- 2022 -----
- December
- November
- October
- September
- August
- July
- June
- May
- April
- March
- February
- January
- ----- 2021 -----
- December
- November
- October
- September
- August
- July
- June
- May
- April
- March
- February
- January
- ----- 2020 -----
- December
- November
- October
- September
- August
- July
- June
- May
- April
- March
- February
- January
- ----- 2019 -----
- December
- November
- October
- September
- August
- July
- June
- May
- April
- March
- February
- January
- ----- 2018 -----
- December
- November
- October
- September
- August
- July
- June
- May
- April
- March
- February
- January
- ----- 2017 -----
- December
- November
- October
- September
- August
- July
- June
- May
- April
- March
- February
- January
- ----- 2016 -----
- December
- November
- October
- September
- August
- July
- June
- May
- April
- March
- February
- January
- ----- 2015 -----
- December
- November
- October
- September
- August
- July
- June
- May
- April
- March
- February
- January
- ----- 2014 -----
- December
- November
- October
- September
- August
- July
- June
- May
- April
- March
- February
- 31 participants
- 7416 messages
Poostdoctoral Position - Jorge Riera on Behalf of Dr. Zachary Danziger) (Applied Neural Interfaces)
by Jorge Riera Diaz
POSTDOCTORAL RESEARCH ASSOCIATE POSITION
A postdoctoral research position is available to develop validation systems and decoding algorithms for brain-computer interface applications. Investigations will take place at the Applied Neural Interfaces Laboratory in Florida International University's Department of Biomedical Engineering, which is housed in the College of Engineering and Computing. The position entails software development, conducting human behavioral studies, and algorithm design with the goal of advancing the frontiers of brain-computer interface research and understanding the relationship between human users and adaptive controllers. The postdoctoral scholar will be expected to lead experiment design and data analysis efforts as well as participate in guiding the overall intellectual direction of the project. The position will allow the postdoctoral researcher the opportunity to creatively develop new solutions to challenging problems related to the neuroscience of braincomputer interfaces using state-of-the-art algorithms, advanced computing equipment, and virtual reality hardware. Applicants should have a Ph.D. in biomedical engineering, neuroscience, or a related field and have experience with MATLAB. For information about related projects see: https://anil.fiu.edu/ Qualified candidates are encouraged to apply to Job Opening ID 512642 at facultycareers.fiu.edu or directly to the Principal Investigator, Dr. Zachary Danziger (Zachary.Danziger(a)fiu.edu) with a letter of interest, curriculum vitae, and the names and contact information for at least 3 references. To receive full consideration, applications and required materials should be received by December 30th. Review will
continue until position is filled. FIU is a member of the State University System of Florida and an Equal Opportunity, Equal Access Affirmative Action Employer. All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, national origin, disability status, protected veteran status, or any other characteristic protected by law.
Florida International University is classified by Carnegie as a R1: Doctoral Universities - Highest Research Activity and recognized as a Carnegie engaged university. It is a public research university with colleges and schools that offers 196 bachelor's, master's and doctoral programs in fields such as engineering, computer science, international relations, architecture, law and medicine. As one of South Florida's anchor institutions, FIU contributes almost $9 billion each year to the local economy. FIU is Worlds Ahead in finding solutions to the most challenging problems of our time. FIU emphasizes research as a major component of its mission. FIU has awarded more than 220,000 degrees and enrolls more than 54,000 students in two campuses and three centers including FIU Downtown on Brickell, FIU@I-75, and the Miami Beach Urban Studios. FIU's Medina Aquarius Program houses the Aquarius Reef Base, a unique underwater research facility in the Florida Keys. FIU also supports artistic and cultural engagement through its three museums: Patricia & Phillip Frost Art Museum, the Wolfsonian-FIU, and the Jewish
Museum of Florida-FIU. FIU is a member of Conference USA and has more than 400 student-athletes participating in 18 sports. For more information about FIU, visit http://www.fiu.edu/.
Jorge Riera, PhD
Associate Professor
Dept. Biomedical Engineering
Florida International University
Miami, FL 33174
Tel. 305 348 4948
Email. jrieradi(a)fiu.edu<mailto:jrieradi@fiu.edu>
Nov. 30, 2016
Workshop on Tactile coding and neuroprostheses
by Alberto Mazzoni
Dear all,
the workshop on tactile coding taking place in the The Biorobotics
Institute of the Scuola Superiore Sant'Anna in the next two days (see
below) will be available for streaming on the Facebook page of the Institute
https://www.facebook.com/istitutobioroticascuolasuperioresantanna/
the full program is now available in .pdf form here
sssa.bioroboticsinstitute.it/events/TFN2016
-----------------------------------------------------------------------------------------------
*Workshop on Tactile coding and neuroprostheses *
*December 1-2 2016, Pontedera (Pisa) - Italy *
*@ The Biorobotics Institute of the Scuola Superiore Sant'Anna*
*ABSTRACT*
Neurophysiology of touch and development of artificial tactile sensation
are two fields of research with an ever-increasing interchange. Advanced
neuroprostheses are progressively focusing on reproducing the naturalistic
processing of tactile sensations in the peripheral and central nervous
system. In turn, biomimetic tactile sensors and behavioral studies on
patient implanted with tactile neuroprostheses can contribute to the
understanding of tactile coding. This workshop aims at fostering the
integration of neurophysiological, computational and robotics studies on
touch with contribution of leading experts in the different fields.
*WORKSHOP SESSIONS*
*Neurophysiology of touch *- keynote speaker *Roland S Johannson* (Umea
University, Sweden)
*Touch perception and tactile coding *- keynote speaker *Vincent Hayward*
(Institut des Systèmes Intelligents et de Robotique, Paris, France)
*Touch restoration, neuroprostheses and biorobotics *- keynote speaker *Sliman
Bensmaia* (University of Chicago, USA)
*DETAILS*
The workshop takes place on the premises of The Biorobotics Institute of
Scuola Superiore Sant'Anna, viale Rinaldo Piaggio 24, in Pontedera (15 mins
by train from Pisa, 50 mins from Florence).
The event is free, but registration is compulsory. *To register, please
write to local organizer Alberto Mazzoni (a.mazzoni(a)sssup.it
<a.mazzoni(a)sssup.it>)*
*ORGANIZERS*
Silvestro Micera (Scuola Superiore Sant'Anna, Pisa, Italy / École
polytechnique fédérale de Lausanne, Switzerland)
Henrik Jorntell (Lund University, Sweden)
Calogero Oddo (Scuola Superiore Sant'Anna, Pisa, Italy)
Alberto Mazzoni (Scuola Superiore Sant'Anna, Pisa, Italy)
*ACKNOWLEDGMENTS*
Italian Ministry of Foreign Affairs and International Cooperation,
Directorate General for Country Promotion (Economy, Culture and
Science)—Unit for Scientific and Technological Cooperation, via the
Italy-Sweden bilateral research project on "Brain network mechanisms for
integration of natural tactile input patterns", NEBIAS European project
(EUFP7-ICT-611687) and Scuola Superiore Sant'Anna fund IEXERC14AM.
Nov. 30, 2016
Job Opening: Computational Neuroscience Research Assistant
by Jonathan Nicholas
Hello all,
Please see the following ad for a full-time computational neuroscience RA:
Computational Neuroscience Research Assistant Position at Stanford University: Stanford University has an opening for a talented research assistant with strong computational and programming skills. This is an exciting opportunity to work with a multidisciplinary research team (http://scsnl.stanford.edu) on a wide range of studies of human brain function and dysfunction. The successful candidate will assist lab members with neuroimaging data analysis and data organization and management. He/She will have opportunities to develop and apply novel multimodal data analysis techniques and to co-author research publications. Experience with Matlab, Python, R, signal and image processing, machine learning, statistics, databases, Linux, and shell scripting is required. Experience in neuroimaging/neural data analysis is desired. Excellent organizational and interpersonal communication skills are required. We are seeking talented and enthusiastic candidates with a strong background in biomedical engineering, computer science, physics, mathematics, statistics, computational neuroscience, quantitative psychology, or related subjects. Stanford offers a highly competitive salary with excellent health and retirement benefits. A two-year commitment is required. Please email a CV, a statement of research interests and career goals, and contact information for three references to scsnl.stanford+quantitative(a)gmail.com
Thanks,
Jonathan
Nov. 29, 2016
Fully-funded four-year PhD studentship in Computational Neuroscience at Imperial College London
by Reichenbach, Johann D T
An exciting PhD project in Computational Neuroscience is available for UK/EU candidates in the group of Tobias Reichenbach (http://www.bg.ic.ac.uk/research/reichenbach/index.html) at Imperial College London. The student will develop state-of-the art neuronal network models to investigate the effects of complex spatio-temporal neurostimulation on speech processing. The model development and results will be linked with ongoing experiments, and will pave the way to a novel rehabilitation from neural impairments with speech comprehension.
The PhD position is part of the Center for Neurotechnology (http://www.imperial.ac.uk/neurotechnology/cdt) at Imperial College London. The successful candidate will join an international cohort of PhD students working on cutting-edge topics of computational and experimental neuroscience and engineering. To apply please visit the Centre's project page (http://www.imperial.ac.uk/neurotechnology/cdt/projects/) access the tab "Projects available for Oct 2017" and select the project "Developing a novel type of neurostimulation to foster speech processing and rehabilitation from aphasia". Deadline is the 31st of January 2017.
-------------------------------------------
Tobias Reichenbach
Lecturer, Biophysics of Hearing
Editor, Heliyon
Department of Bioengineering
Imperial College London
South Kensington Campus
SW7 2AZ London, UK
http://www.bg.ic.ac.uk/research/reichenbach/
Nov. 28, 2016
Graduate assistantships in Computational Science at FSU
by Gordon Erlebacher
Florida State University
Graduate student assistantships available for
Ph.D. and M.S. degree programs in Computational Science
The Department of Scientific Computing at Florida State University offers
innovative M.S. and Ph.D. degree programs in Computational Science.
Graduate teaching and research assistantships are available for qualified,
motivated students who are interested in receiving cross-disciplinary
training in computational science.
Many, if not most interdisciplinary degree programs and schools, including
those in computational science, are jointly administered by several
departments. Florida State University has created an independent
department, the Department of Scientific Computing, that offers truly
cross-disciplinary graduate degree programs in computational science. All
faculty, postdoctoral associates, and students associated with the
Department of Scientific Computing have offices in the same building,
leading to a supportive, synergetic, environment in which the varied
aspects of research and education in computational science are not only
supported, but is a way of life. For more information about the Department
of Scientific Computing and its graduate degree programs, please go to
http://www.sc.fsu.edu.
Over the last few decades, computations have joined theory and
experimentation to form the three pillars of scientific discovery and
technological design. Computational science can be viewed as residing at
the intersection of traditional disciplines such as mathematics, computer
science, statistics, engineering, and the sciences. Thus, computational
science draws from but is not a subset of any of these disciplines. Due to
the cross-disciplinary nature of computational science, it is essential
that a computational scientist be trained in a setting that incorporates
all the components that make up computational science. The Department of
Scientific Computing is uniquely positioned to offer such training because
it composed of truly cross-disciplinary faculty with strong computational
backgrounds in the fields of biology, computer science, engineering,
geophysical science, mathematics, material science, physics, and
statistics, with an even broader spectrum of disciplines through
collaborations within and outside Florida State.
Students enrolled in the Ph.D. program in Computational Science can choose
several areas of specialization. In addition to the major track, which
trains students interested in the mathematical and computer science aspects
of computational algorithms that can be applied to a wide range of
disciplines, we offer tracks in atmospheric science, biochemistry,
biological science, geological science, materials science, and physics.
Soon, we will add a track in computational intelligence. Students following
these tracks gain expertise in computational issues specifically related to
the chosen field. All students, however, will be involved in truly
cross-disciplinary training and research.
The Department of Scientific Computing maintains a large and diverse
computing infrastructure in support of research and education. Available
computing resources include supercomputers, a number of clusters and
computational servers, and multi-core workstations with advanced graphics
cards available, and other specialized hardware.
Florida State University is a national graduate research university which
has built a reputation as a strong center for research in the sciences. It
is located in Tallahassee, FL which is situated in the Florida panhandle
and is near some of the most beautiful, uncrowded beaches in the United
States as well as other scenic wonders.
Applications are being accepted now for Fall 2017. Assistantships are
available for qualified individuals. Minorities and women are especially
encouraged to apply. Applicants should hold, by the time of entry into the
graduate program, a baccalaureate degree in a natural science, engineering,
computer science, mathematics, or statistics. Interested applicants should
go to http://www.sc.fsu.edu/graduate/application, where detailed
instructions about how to apply are given.
Requests for more information and questions about the graduate programs or
about the Department of Scientific Computing should be addressed to Dr.
Sachin Shanbhag (Graduate Coordinator) at sshanbhag(a)fsu.edu or Gordon
Erlebacher (Chair) at gerlebacher(a)fsu.edu.
--
Gordon Erlebacher
Chair, Department of Scientific Computing
Nov. 28, 2016
Postdoc opening in perceptual/cognitive neuroscience
by Simon Kelly
Applications are invited for a postdoctoral research post in the Cognitive
Neural systems lab (https://cogneusys.com/) led by Simon Kelly, to study
computational and neural mechanisms of value-biased sensorimotor decision
making under time pressure. This position is part of a project funded by
Science Foundation Ireland, which involves a combination of psychophysics,
computational modelling, non-invasive electrophysiology of human brain and
muscle, and analyses of existing single-cell neurophysiological data.
Though involvement is expected in all of these aspects, the most critical
role of the postdoctoral researcher will be in computational modelling.
Candidates must thus have strong analytic and programming skills, and
specific experience in the computational modelling of cognitive processes.
Candidates must also be highly motivated and have excellent communication
skills.
Dr. Kelly's electrophysiology/psychophysics lab is situated within the
School of Electrical and Electronic Engineering in University College
Dublin, Ireland, and has strong collaborative links to cognitive and
clinical neuroscience research groups both locally (e.g. Trinity College
Institute of Neuroscience) and internationally (e.g. City College and
Columbia University in New York). The successful applicant will have ample
opportunities for wider collaborations and the learning of new skills.
Interested candidates should submit a brief research statement and CV
including publications through the UCD job vacancies site (
http://www.ucd.ie/hr/jobvacancies/ - search for keyword 'kelly', or job ref
008870). Informal enquiries can be directed to Simon (simon.kelly(a)ucd.edu)
Candidates should explain in their statement how their own research
interests fit with those of the Kelly lab. The deadline for submitting
applications is Jan 8th 2017, and shortlisting and interviews will take
place shortly after that.
-----------------------------------------------------------
Simon Kelly, Ph.D.
Associate Professor
School of Electrical and Electronic Engineering
University College Dublin
t: +353 (1) 716 1803
e: simon.kelly(a)ucd.ie
-----------------------------------------------------------
Nov. 25, 2016
PhD positions at the University of Exeter: Developing gaze training for skilled upper-limb prosthetic use Ref: 2407
by Tsaneva-Atanasova, Krasimira
About the award
This project is one of a number which are funded by the Engineering and Physical Sciences Research Council (EPSRC) Doctoral Training Partnership to commence in September 2017. This project is part of a competition for funding. Usually the project which receives the best applicant will be awarded the funding. The studentships will provide funding for a stipend which, is currently £14,296 per annum for 2016-2017, research costs and UK/EU tuition fees at Research Council UK rates for 42 months (3.5 years) for full-time students, pro rata for part-time students.
Please note that of the 56 projects advertised we expect that up to 20 posts will be filled.
Location: University of Exeter, Streatham Campus, Exeter, Devon
Supervisors:
Main supervisor: Prof Krasimira Tsaneva-Atanasova<http://emps.exeter.ac.uk/mathematics/staff/kt298> (University of Exeter)
Co-supervisor: Dr Gavin Buckingham<http://sshs.exeter.ac.uk/staff/index.php?web_id=Gavin_Buckingham> (University of Exeter)
Co-supervisor: Dr Sam Vine<http://sshs.exeter.ac.uk/staff/index.php?web_id=Samuel_Vine> (University of Exeter)
Co-supervisor: Dr Greg Wood<http://www.cheshire.mmu.ac.uk/exspsci/ourstaff/profile/index.php?profile_id…> (Manchester Metropolitan University)
Co-supervisor: Dr Mark Wilson<http://sshs.exeter.ac.uk/staff/index.php?web_id=Mark_Wilson> (University of Exeter)
Project Description:
Learning to use a prosthetic limb is inherently difficult and requires a huge amount of concentration. Like learning how to wield a new tool for the first time, amputees need to acquire the confidence and dexterity required for skilled action. In order to produce accurate goal-directed movements the motor system requires accurate and timely visual information making the timing and location of the person’s gaze, with relation to the movement of their limbs, critical for skilled behaviour. There is, however, no structured training protocol for use with prosthetic hands. We aim to develop a novel gaze training regime to facilitate the use of a prosthetic hand to skilfully interact with objects.
In the first part of the project, the student will undertake an observational study to determine what factors lead some individuals to become skilled with a prosthesis faster than others. We will test large numbers of intact (i.e., without amputation) participants learning to use a state-of-the-art myoelectric prosthetic arm simulator, which is controlled by muscle feedback but ergonomically designed to fit over the wrist of an intact hand. Participants will move objects of different of sizes and weights from one location to another with a range of precision requirements and in the presence of a range of obstacles. Over multiple sessions we will measure hand and object kinematics, fingertip forces, and eye path with a head-mounted eye tracker. We will then develop a data-driven mathematical model of the eye tracking and biomechanical performance data. Statistical analysis of the patterns of eye movement will provide new insights into the ‘signature’ of good performance using the prosthetic arm.
The second phase will use the data from Project 1 to develop a training protocol that will adopt the ‘expert signatures’ from project work 1 as a prototype for a trainee to follow. We will focus predominantly on the signature of expertise derived from the gaze behaviour measures and implement a gaze training protocol. We will then test the efficacy of this novel training with new set of intact participants using the prosthetic simulator, tracking their performance in comparison to individuals who will receive a sham training protocol.
In the final stage of the project work, the gaze training protocol will be used in a sample of upper-limb-amputees as they learn how to use their new prosthesis. As this state of the project will not be limited to myoelectric prosthetic users, this will also allow us to test the generalizability of our training protocol. The students will be involved in these experiments by running model simulations and data analysis to provide quantitative information for the training protocol as well as focussing on completing the write-up of their PhD thesis.
Entry requirements:
Applicants should have obtained, or be about to obtain, a First or Upper Second Class UK Honours degree, or the equivalent qualifications gained outside the UK. Applicants with a Lower Second Class degree will be considered if they also have Master’s degree. Applicants with a minimum of Upper Second Class degree and significant relevant non-academic experience are encouraged to apply. All applicants would need to meet our English language requirements by the start of the project http://www.exeter.ac.uk/postgraduate/apply/english/.
The majority of the studentships are available for applicants who are ordinarily resident in the UK and are classed as UK/EU for tuition fee purposes. If you have not resided in the UK for at least 3 years prior to the start of the studentship, you are not eligible for a maintenance allowance so you would need an alternative source of funding for living costs.To be eligible for fees only funding you must be ordinarily resident in a member state of the EU
Applicants who are classed as International for tuition fee purposes are not eligible for funding.
Summary
Application deadline: 11th January 2017
Number of awards: 1
Value: 3.5 year studentship: UK/EU tuition fees and an annual maintenance allowance at current Research Council rate. Current rate of £14,296 per year
Duration of award: per year
Contact: Doctoral College Doctoral.College(a)exeter.ac.uk<mailto:Doctoral.College@exeter.ac.uk>
How to apply
Click here to apply<http://www.exeter.ac.uk/postgraduate/money/funding/application/>
Please be aware you will be asked to upload the following documents:
• CV
• Letter of application outlining your academic interests, prior research experience and reasons for wishing to undertake the project.
• Transcript(s) giving full details of subjects studied and grades/marks obtained. This should be an interim transcript if you are still studying.
• If you are not a national of a majority English-speaking country you will need to submit evidence of your current proficiency in English. For further details of the University’s English language requirements please see http://www.exeter.ac.uk/postgraduate/apply/english/.
The closing date for applications is midnight on 11 January 2017. Interviews will be held at the University of Exeter between 13 February and 17 February 2017.
If you have any general enquiries about the application process please email Doctoral.College(a)exeter.ac.uk<mailto:Doctoral.College@exeter.ac.uk>
or phone +44 (0)1392 722311. Project-specific queries should be directed to the supervisor.
During the application process, the University may need to make certain disclosures of your personal data to third parties to be able to administer your application, carry out interviews and select candidates. These are not limited to, but may include disclosures to:
• the selection panel and/or management board or equivalent of the relevant programme, which is likely to include staff from one or more other HEIs;
• administrative staff at one or more other HEIs participating in the relevant programme.
Such disclosures will always be kept to the minimum amount of personal data required for the specific purpose. Your sensitive personal data (relating to disability and race/ethnicity) will not be disclosed without your explicit consent.
Krasimira Tsaneva-Atanasova
Professor of Mathematics for Healthcare
Department of Mathematics
College of Engineering, Mathematics and Physical Sciences
University of Exeter
Exeter, Devon, EX4 4QF, UK
tel: +44 (0) 1392 723615
email: k.tsaneva-atanasova(a)exeter.ac.uk<mailto:k.tsaneva-atanasova@exeter.ac.uk>
web: http://emps.exeter.ac.uk/mathematics/staff/kt298
Nov. 19, 2016
PhD positions at the University of Exeter: Controlling noise effects in models of excitable cells
by Tsaneva-Atanasova, Krasimira
About the award
This project is one of a number which are funded by the Engineering and Physical Sciences Research Council (EPSRC) Doctoral Training Partnership to commence in September 2017. The studentships will provide funding for a stipend which, is currently £14,296 per annum for 2016-2017, research costs and UK/EU tuition fees at Research Council UK rates for 42 months (3.5 years) for full-time students, pro rata for part-time students.
Supervisors:
Main supervisor: Prof Krasimira Tsaneva-Atanasova<http://emps.exeter.ac.uk/mathematics/staff/kt298> (University of Exeter)
Co-supervisor: Dr Jan Sieber<http://emps.exeter.ac.uk/mathematics/staff/js543> (University of Exeter)
Co-supervisor: Dr Joël Tabak<http://medicine.exeter.ac.uk/about/profiles/index.php?web_id=Joel_Tabak-Szn…> (University of Exeter)
Location: University of Exeter, Streatham Campus, Exeter, Devon
Project Description:
This is a project that combines biological modelling and general mathematical analysis of the influence of noise on multiple-timescale systems. It will give the student the opportunity to work on open mathematical questions and see their results applied in experiments on living cells.
Many types of cells such as neurons, heart and hormone-releasing cells generate impulses of electrical activity, organized as single spikes or bursts of impulses. In cells of the pituitary gland – the master hormonal gland of the body – the features of electrical activity patterns determine how much hormone is released into the circulation. Hence, understanding how the characteristic features of electrical activity arise is crucial to understanding how these cells function, and how they may malfunction in disease. Mathematical modelling and analysis techniques have proven very successful in helping unravel fundamental mechanisms controlling the behaviour of excitable cells.
Electrical activity is driven by the interactions between ion channels of the cell membrane, which produce noisy electrical currents. The mathematical models of electrical activity thus contain random and deterministic parts, which typically appear as separate terms (e.g., the deterministic drift and the Brownian-motion induced diffusion in stochastic differential equations). In experimental practice this distinction is not as clear. For example, ion channels in cells with electrical activity generate noisy signals, driving systematically the electrical and chemical activity in the cell, which operate also on several time scales. It is still unclear how this randomness influences electrical activity in real cells.
This PhD project will investigate how one can use control to identify the systematic (deterministic) component of trajectories in dynamical systems with random inputs (such as ion channel noise) that operate on two or three different time scales (such as spiking or bursting cells). A first goal to separate a systematic, approximately periodic, signal without knowledge of the period using control and geometric methods in a reconstructed phase space. Preliminary investigations with noise on a single time scale interacting with a two-timescale oscillation (spiking) have shown that this is in principle possible. It is an open question how this can be generalized to periodic behaviours with a more complicated geometry (such as bursting), interacting with noise effects that occur on two time scales. Another open question is how the geometric control and noise identification is related to extended time-delayed feedback, which creates a reference signal from a geometric time series of past outputs.
Entry requirements:
Applicants should have obtained, or be about to obtain, a First or Upper Second Class UK Honours degree, or the equivalent qualifications gained outside the UK. Applicants with a Lower Second Class degree will be considered if they also have Master’s degree. Applicants with a minimum of Upper Second Class degree and significant relevant non-academic experience are encouraged to apply. All applicants would need to meet our English language requirements by the start of the project http://www.exeter.ac.uk/postgraduate/apply/english/. The majority of the studentships are available for applicants who are ordinarily resident in the UK and are classed as UK/EU for tuition fee purposes; however up to 9 fully-funded studentships across the DTP are available for EU/EEA applicants not ordinarily resident in the UK. Applicants who are classed as International for tuition fee purposes are not eligible for funding.
Summary
Application deadline: 11th January 2017
Value: 3.5 year studentship: UK/EU tuition fees and an annual maintenance allowance at current Research Council rate. Current rate of £14,296 per year.
Duration of award: per year
Contact: Doctoral College: 01392 722737 doctoral.college(a)exeter.ac.uk<mailto:doctoral.college@exeter.ac.uk>
How to apply
Click here to apply<http://www.exeter.ac.uk/postgraduate/money/funding/application/>
Please be aware you will be asked to upload the following documents:
• CV
• Letter of application outlining your academic interests, prior research experience and reasons for wishing to undertake the project.
• Transcript(s) giving full details of subjects studied and grades/marks obtained. This should be an interim transcript if you are still studying.
• If you are not a national of a majority English-speaking country you will need to submit evidence of your current proficiency in English. For further details of the University’s English language requirements please see http://www.exeter.ac.uk/postgraduate/apply/english/.
The closing date for applications is midnight on 11 January 2017. Interviews will be held at the University of Exeter between 13 February and 17 February 2017.
If you have any general enquiries about the application process please email Doctoral.College(a)exeter.ac.uk<mailto:Doctoral.College@exeter.ac.uk>
or phone +44 (0)1392 722311. Project-specific queries should be directed to the supervisor.
During the application process, the University may need to make certain disclosures of your personal data to third parties to be able to administer your application, carry out interviews and select candidates. These are not limited to, but may include disclosures to:
• the selection panel and/or management board or equivalent of the relevant programme, which is likely to include staff from one or more other HEIs;
• administrative staff at one or more other HEIs participating in the relevant programme.
Such disclosures will always be kept to the minimum amount of personal data required for the specific purpose. Your sensitive personal data (relating to disability and race/ethnicity) will not be disclosed without your explicit consent.
Krasimira Tsaneva-Atanasova
Professor of Mathematics for Healthcare
Department of Mathematics
College of Engineering, Mathematics and Physical Sciences
University of Exeter
Exeter, Devon, EX4 4QF, UK
tel: +44 (0) 1392 723615
email: k.tsaneva-atanasova(a)exeter.ac.uk<mailto:k.tsaneva-atanasova@exeter.ac.uk>
web: http://emps.exeter.ac.uk/mathematics/staff/kt298
Nov. 19, 2016
PhD Position: Modelling spine calcium dynamics and cross talk: implications for synaptic plasticity and ischaemia
by Tsaneva-Atanasova, Krasimira
PhD Position: Modelling Spine Calcium Dynamics, University of Exeter
Project Description:
Nerve cells (neurones) in the brain communicate with one another at connect ions called synapses. A chemical (neurotransmitter) is released from a neuron and travels across the synapse to activate receptors in the adjacent neuron. Synapses can change their strength (known as “synaptic plasticity”) by altering the number of receptors found on the surface of the neuron in the synapse. This process is thought to underlie learning and memory, because the memory is likely to be stored in a circuit of interconnected neurons. The critical trigger for synaptic plasticity is the influx of calcium ions into very small compartments of neurones called spines, tiny structures approximately 1 millionth of a metre in diameter. However, this influx of calcium ions can also trigger cell death after ischaemic injury that occurs during stroke so it must be tightly regulated.
Plasticity of excitatory synapses is a key mechanism by which we alter the flow of information in the brain and encode memories. Individual synapses occur at thousands of postsynaptic dendritic spines separated from the dendrite by a thin neck making each spine a semi-autonomous entity. It is thought that this is what underpins synapse specific plasticity enabling high capacity memory. However, recently it has become clear that cross talk between coactive spines is the basis for many forms of synaptic plasticity, but the mechanism, requirements and biological function for this spine-spine communication remain unknown. Similarly, the precise calcium signals that differentiate plasticity from cell death processes are also unknown. This project aims to address these questions using a combination of mathematical modelling and high-resolution imaging data collected with high-powered laser microscope. In order to capture the complex geometry of the system we will employ advanced mathematical techniques for spatio-temporal modelling and analysis such as finite element methods.
This work is important because it will lead to a wealth of new information about synaptic plasticity and cell death processes, and hence the mechanisms underlying learning and memory and ischaemic brain damage. Furthermore, dysfunction in the ability to undergo synaptic plasticity is thought to underlie the altered neuronal activity in several brain diseases, such as Alzheimer’s disease, schizophrenia and autism. Therefore, the mechanisms that we will study in this research will add to our knowledge about these debilitating diseases, and may contribute to developing therapies.
Academic Supervisors:
Main Supervisor: Professor Krasimira Tsaneva-Atanasova (University of Exeter)
Co-supervisor: Dr Jack Mellor (University of Bristol)
Summary
Application deadline: 5th December 2016
Value: £14,296 per annum for 2016-17
How to apply
Click here to apply<http://www.exeter.ac.uk/postgraduate/money/funding//application/>
Please be aware you will be asked to upload the following documents:
• CV
• Letter of application outlining your academic interests, prior research experience and reasons for wishing to undertake the project. Please indicate your preferred project choice if applying for multiple BBSRC SWBio DTP projects.
• Transcript(s) giving full details of subjects studied and grades/marks obtained. This should be an interim transcript if you are still studying.
• If you are not a national of a majority English-speaking country you will need to submit evidence of your proficiency in English (see entry requirements above)
You will be asked to name 2 referees as part of the application process however we will not contact these people until the shortlisting stage. Your referees should not be from the prospective supervisory team.
The closing date for applications is midnight on Monday, 5 December 2016. Interviews will be held at the University of Exeter in early February 2017.
If you have any general enquiries about the application process please email cles-pgr-support(a)exeter.ac.uk<mailto:cles-pgr-support@exeter.ac.uk> or phone +44 (0)1392 725150 / 723706. Project-specific queries should be directed to the supervisor.
-----------------------------------------------------------
BBSRC SWBio DTP PhD studentship: Modelling spine calcium dynamics and cross talk: implications for synaptic plasticity and ischaemia
About the South West Biosciences Doctoral Training Partnership:
The South West Biosciences Doctoral Training Partnership (SWBio DTP) is a BBSRC-funded PhD training programme in the biosciences, delivered by a consortium comprising the Universities of Bristol (lead), Bath, Cardiff, Exeter, and Rothamsted Research. Together, these institutions present a distinctive cadre of bioscience research staff and students with established international, national and regional networks and widely recognised research excellence. The partnership has a strong track record in advancing knowledge through high quality research and teaching in partnership with industry and government.
The aim of the SWBio DTP is to produce highly motivated and excellently trained postgraduates in the BBSRC priority areas of Agriculture & Food Security (AFS) and World-Class Underpinning Bioscience (WCUB). These are growth areas of the biosciences and for which there will be considerable future demand.
About the award:
This project is one of a number that are in competition for funding from the South West Biosciences Doctoral Training Partnership (SWBio DTP). Up to 4 fully-funded studentships are being offered to start in September 2017 at the University of Exeter.
For UK/EU nationals who meet the residency requirements outlined by the BBSRC, the studentship will cover funding for 4 years (48 months) as follows. These awards might be available to part-time students, but only in exceptional circumstances, in which case the funding will be paid on a pro-rata basis.
• a stipend at the standard Research Council UK rate; currently £14,296 per annum for 2016-2017
• research and training costs
• tuition fees (at the standard Research Councils UK rate
• additional funds to support fieldwork, conferences and a 3-month internship
Location:
University of Exeter, Streatham Campus, Exeter
Entry requirements:
Applicants should have obtained, or be about to obtain, a First or Upper Second Class UK Honours degree, or the equivalent qualifications gained outside the UK, in an appropriate area of science or technology. Applicants with a Lower Second Class degree will be considered if they also have Masters degree or have significant relevant non-academic experience. In addition, due to the strong mathematical component of the taught course in the first year and the quantitative emphasis in our projects, a minimum of a grade B in A-level Maths or an equivalent qualification or experience is required. If English is not your first language you will need to have achieved at least 6.5 in IELTS and no less than 6.5 in any section by the start of the project. Alternative tests may be acceptable, please see http://www.bristol.ac.uk/study/language-requirements/profile-c/.
Students from EU countries who do not meet the residency requirements may still be eligible for a fees-only award but no stipend. Applicants who are classed as International for tuition fee purposes are not eligible for funding. Further information about eligibility can be found in the following document: http://www.bbsrc.ac.uk/documents/studentship-eligibility-pdf/
Selection process:
Please note, the studentship selection process will take place in two stages:
1. The project supervisors will consider your application and may invite you to visit for an informal interview. You can apply for more than one BBSRC SWBio DTP project, although supervisors may take into account your interest and commitment to their particular project. If you apply for multiple projects, please indicate your preferred project choice in your letter of application. Each application for an individual project will be considered separately by the project supervisors.
2. After closure of applications, each supervisory team will then nominate their preferred applicant. A shortlist will be selected from these nominations and shortlisted applicants will be invited for interview on a selection day at the University of Exeter. Please note that nomination by a project supervisor therefore does not guarantee the award of a studentship.
-----------------------------------------------------------
Krasimira Tsaneva-Atanasova
Professor of Mathematics for Healthcare
College of Engineering, Mathematics and Physical Sciences
University of Exeter
Exeter, Devon, EX4 4QF, UK
tel: +44 (0) 1392 723615
email: k.tsaneva-atanasova(a)exeter.ac.uk<mailto:k.tsaneva-atanasova@exeter.ac.uk>
web: http://emps.exeter.ac.uk/mathematics/staff/kt298
Nov. 19, 2016
Call for Registration: Computational Neurology 2017. Newcastle upon Tyne, UK
by roman bauer
Dear all,
We are pleased to announce that the registration for the Computational
Neurology Conference in Newcastle upon Tyne, UK has opened.
*Please register here:*
https://conferences.ncl.ac.uk/compneurology/registration/
- Registration is free and includes lunch/coffee breaks on both days
- Speakers are not required to register
*Registration deadline:*
February 5, 2017
*List of confirmed speakers:*
- Javier Escudero - Edinburgh
- Marc Goodfellow - Exeter
- Andrew Jackson - Newcastle
- Viktor Jirsa – Marseille
- Marcus Kaiser - Newcastle
- Dimitri Kullmann – University College London
- Marco Manca - CERN
- Florian Mormann - Bonn
- Matthew Nolan – Edinburgh
- Gregory Scott - Imperial College London
- Evelyne Sernagor - Newcastle
- Peter Uhlhaas – Glasgow
Additionally, there will be multiple mini-talks from selected poster
presenters.
More information on the conference can be found at the dedicated website:
https://conferences.ncl.ac.uk/compneurology/
Thanks and we look forward to seeing you in Newcastle upon Tyne!
On behalf of the organizers:
Roman Bauer, Anupam Hazra, Luis Peraza Rodriguez, Peter Taylor, Yujiang Wang
--
Roman Bauer, Ph.D.
MRC Research Fellow
Institute of Neuroscience
Newcastle University
Newcastle upon Tyne NE1 7RU, UK
tel: +44 (0) 191 208 8933 <+44%20(0)%20191%20208%208933>
Nov. 19, 2016